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Application of Stereolithographic Custom Models for Studying the Impact of Biofilms and Mineral Precipitation on Fluid Flow

机译:立体光刻定制模型在研究生物膜和矿物沉淀对流体流动的影响中的应用

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摘要

Here we introduce the use of transparent experimental models fabricated by stereolithography for studying the impacts of biomass accumulation, minerals precipitation, and physical configuration of flow paths on liquid flow in fracture apertures. The internal configuration of the models ranged in complexity from simple geometric shapes to those that incorporate replicated surfaces of natural fractures and computationally derived fracture surfaces. High-resolution digital time-lapse imaging was employed to qualitatively observe the migration of colloidal and soluble dyes through the flow models. In this study, a Sphingomonas sp. and Sporosarcina (Bacillus) pasteurii influenced the fluid dynamics by physically altering flow paths. Microbial colonization and calcite deposition enhanced the stagnant regions adjacent to solid boundaries. Microbial growth and calcite precipitation occurred to a greater extent in areas behind the fabricated obstacles and less in high-velocity orifices.
机译:在这里,我们介绍了使用由立体光刻技术制造的透明实验模型来研究生物量积累,矿物质沉淀和流道的物理配置对裂缝孔中液体流动的影响。模型的内部配置复杂,范围从简单的几何形状到包含自然裂缝的复制表面和计算得出的裂缝表面的几何形状。高分辨率数字延时成像用于定性地观察流模型中胶体和可溶性染料的迁移。在这项研究中,鞘氨醇单胞菌属。巴氏芽孢杆菌(Bacillus pasturii)和巴斯德孢子菌(Sporosarcina,Bacillus pasteurii)通过物理改变流动路径来影响流体动力学。微生物定殖和方解石沉积增强了固体边界附近的停滞区域。在所制造的障碍物后面的区域中,微生物的生长和方解石沉淀的发生率较高,而在高速孔中的发生率较低。

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